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超声-微波协同萃取松针中紫杉烷类化合物的参数优化。

Parameter Optimization of Ultrasonic-Microwave Synergistic Extraction of Taxanes from Needles.

机构信息

College of Biology and Agricultural Engineering, Jilin University, Changchun 130022, China.

出版信息

Molecules. 2023 Nov 24;28(23):7746. doi: 10.3390/molecules28237746.

Abstract

Taxanes are the best-known compounds in owing to their strong anticancer effects. However, the traditional taxanes extraction method is the solid-liquid extraction method, which is limited by a large energy consumption and low yield. Therefore, it is urgent to find an efficient method for taxanes extraction. The ultrasonic microwave synergistic extraction (UME) method integrates the cavitation effect of ultrasound and the intensifying heat transfer (ionic conduction and dipole rotation of molecules) effect of microwave to accelerate the release of intracellular compounds and is used in active ingredient extractions. This study aimed to evaluate the performance of UME in extracting taxanes from needles (dichloromethane-ethanol as extractant). A single-factor experiment, Plackett-Burman design, and the response surface method showed that the optimal UME parameters for taxanes extraction were an ultrasonic power of 300 W, a microwave power of 215 W, and 130 sieve meshes. Under these conditions, the taxanes yield was 570.32 μg/g, which increased by 13.41% and 41.63% compared with the ultrasound (US) and microwave (MW) treatments, respectively. The reasons for the differences in the taxanes yield were revealed by comparing the physicochemical properties of residues after the UME, US, and MW treatments. The cell structures were significantly damaged after the UME treatment, and numerous tiny holes were observed on the surface. The absorption peaks of cellulose, hemicellulose, and lignin increased significantly in intensity, and the lowest peak temperature (307.40 °C), with a melting enthalpy of -5.19 J/g, was found after the UME treatment compared with the US and MW treatments. These results demonstrate that UME is an effective method (570.32 μg/g) to extract taxanes from needles by destroying cellular structures.

摘要

紫杉醇因其强大的抗癌作用而成为最著名的化合物。然而,传统的紫杉醇提取方法是固液萃取法,该方法受到高能耗和低收率的限制。因此,迫切需要找到一种有效的紫杉醇提取方法。超声微波协同萃取(UME)方法将超声的空化效应和微波的强化传热(离子传导和分子偶极旋转)效应相结合,加速细胞内化合物的释放,用于有效成分的提取。本研究旨在评估 UME 从 针叶(二氯甲烷-乙醇作为提取剂)中提取紫杉醇的性能。单因素实验、Plackett-Burman 设计和响应面法表明,紫杉醇提取的最佳 UME 参数为超声功率 300 W、微波功率 215 W 和 130 目筛网。在这些条件下,紫杉醇的得率为 570.32 μg/g,分别比超声(US)和微波(MW)处理提高了 13.41%和 41.63%。通过比较 UME、US 和 MW 处理后 残渣的物理化学性质,揭示了紫杉醇产率差异的原因。UME 处理后细胞结构明显受损,表面出现许多微小的孔。纤维素、半纤维素和木质素的吸收峰强度显著增加,与 US 和 MW 处理相比,UME 处理后的最低峰值温度(307.40°C)和熔融焓为-5.19 J/g。这些结果表明,UME 通过破坏细胞结构是一种有效的方法(570.32 μg/g)从 针叶中提取紫杉醇。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aea0/10708025/63d7e6ac4ca3/molecules-28-07746-g001.jpg

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